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    • 1. 发明授权
    • Determining heating element and water heater status based on galvanic current
    • 基于电流确定加热元件和热水器状态
    • US09372012B2
    • 2016-06-21
    • US13891250
    • 2013-05-10
    • General Electric Company
    • Brett Alan Farris
    • F24H1/20H05B3/78F24H9/20H05B1/02F24H1/18F24H9/00
    • F24H9/2021F24H1/185F24H9/0047H05B1/0269H05B3/78
    • Systems and methods for determining heating element and water heater status based on galvanic current are provided. An exemplary water heater includes a tank for holding a volume of water and an anode rod extending into the water. The anode rod has a core made of a conductive material. The water heater also includes at least one heating element configured to heat the water when energized. The water heater includes a current measurement circuit configured to generate a feedback signal describing a galvanic current flowing from the core of the anode rod to an electrical ground. The water heater also includes a controller configured to receive the feedback signal from the current measurement circuit and to control one or more operations of the water heater based on the feedback signal.
    • 提供了基于电流确定加热元件和热水器状态的系统和方法。 示例性的热水器包括用于保持大量水的罐和延伸到水中的阳极杆。 阳极棒具有由导电材料制成的芯。 热水器还包括至少一个加热元件,该加热元件构造成在通电时加热水。 热水器包括电流测量电路,其被配置为产生描述从阳极棒的芯流到电接地的电流的反馈信号。 热水器还包括配置成从电流测量电路接收反馈信号并基于反馈信号控制热水器的一个或多个操作的控制器。
    • 2. 发明授权
    • Prevention or reduction of scaling on a heater element of a water heater
    • 防止或减少热水器加热元件上的结垢
    • US09347684B2
    • 2016-05-24
    • US13700757
    • 2011-07-13
    • Ytsen Wielstra
    • Ytsen Wielstra
    • H05B1/02F24H9/20F22B1/30F24D19/00F24H9/00
    • F24H9/2021F22B1/30F24D19/0092F24H9/0047Y02E20/14
    • The invention provides a method of using a water heater arranged for heating an aqueous liquid wherein the water heater comprises a heating element to heat aqueous liquid in the water heater. The method comprising (a) heating aqueous liquid in the water heater with the heating element, wherein the heating element is in contact with the aqueous liquid; and (b) applying a first AC voltage between the heating element and a counter electrode and applying a second AC voltage between the heating element and the counter electrode, wherein the second AC voltage has a second AC frequency selected from the range of 0.02 Hz-5 Hz and wherein the ratio between the first AC frequency and the second AC frequency is 2 or more.
    • 本发明提供一种使用热水器的方法,所述热水器布置成用于加热含水液体,其中所述热水器包括加热元件以加热热水器中的含水液体。 该方法包括:(a)用加热元件加热热水器中的含水液体,其中加热元件与水性液体接触; 以及(b)在所述加热元件和对电极之间施加第一AC电压并且在所述加热元件和所述对电极之间施加第二AC电压,其中所述第二AC电压具有选自0.02Hz- 5Hz,并且其中所述第一AC频率和所述第二AC频率之间的比率为2以上。
    • 5. 发明申请
    • ELECTRODE BOILER WITH ELECTRODES UNIT
    • 带电极单元的电极锅炉
    • US20150316253A1
    • 2015-11-05
    • US14650213
    • 2012-12-05
    • No Eul Kim
    • Andrey Pavlovich Ilin
    • F22B1/30H05B3/03H05B3/02
    • F22B1/30F24H1/203F24H9/0047F24H9/1818F24H2250/10H05B3/023H05B3/03H05B3/60
    • The invention relates to heat engineering, power engineering and the field of electric heating of liquids, water for instance; it can be used in circulation water heating systems and hot water supply, and as a universal device for diverse electric heaters. An object of the invention are to enhance the ease of fabrication, fabricability, and operability for block electrodes and electrode heating boilers on the whole, to increase the reliability of device both in static and dynamic modes ones. The invention meets an object of extended performance capabilities, versatility and flexibility of the device, potential diversification and enhancement of adaptability in solving particular problems. Moreover, the invention allows improvement of convection in water heating boilers and reduction of uniformity of sludge and rust deposition on electrodes thus increasing the heater effective performance time. The invention object comprises an improvement of protection against breakdowns between the electrodes as well, phase current load imbalance reduction, electrode protection against non-uniform deformation during operation in dynamic conditions. It is also an object of the invention to extend i the range of constructional capacity control without design and dimensional changes. FIG. 2 provides a schematic of electrodes (1) arrangement on the basis (3) located on the inner case (2) side with electrodes (1) slightly deviating from the longitudinal symmetric axis of the case (2) and irregularly spaced on the basis, electrode longitudinal axes deviating from each other at small angles. (4)—outer electrode terminals (1).
    • 本发明涉及热工程,电力工程和液体电加热领域,例如水; 它可以用于循环水加热系统和热水供应,并且作为各种电加热器的通用装置。 本发明的目的是为了增加整体上的块状电极和电极加热锅炉的制造容易性,可制造性和可操作性,以增加静态和动态模式中的装置的可靠性。 本发明满足扩展的性能能力,设备的多功能性和灵活性,潜在的多样化和增强解决特定问题的适应性的目的。 此外,本发明允许改善水加热锅炉中的对流并减少污泥的均匀性和电极上的锈蚀沉积,从而增加加热器的有效性能时间。 本发明的目的是提高对电极之间的击穿的保护,相电流负载不平衡减小,电极保护以防止在动态条件下操作期间的不均匀变形。 本发明的另一个目的是在没有设计和尺寸变化的情况下扩展结构容量控制的范围。 图。 图2提供了位于内壳(2)侧的基础(3)上的电极(1)的示意图,其中电极(1)稍微偏离壳体(2)的纵向对称轴线并且基于不规则间隔开, 电极纵轴以小角度彼此偏离。 (4) - 外部电极端子(1)。
    • 7. 发明申请
    • DETERMINING HEATING ELEMENT AND WATER HEATER STATUS BASED ON GALVANIC CURRENT
    • 基于电流电流确定加热元件和水加热器状态
    • US20140334807A1
    • 2014-11-13
    • US13891250
    • 2013-05-10
    • GENERAL ELECTRIC COMPANY
    • Brett Alan Farris
    • F24H9/20
    • F24H9/2021F24H1/185F24H9/0047H05B1/0269H05B3/78
    • Systems and methods for determining heating element and water heater status based on galvanic current are provided. An exemplary water heater includes a tank for holding a volume of water and an anode rod extending into the water. The anode rod has a core made of a conductive material. The water heater also includes at least one heating element configured to heat the water when energized. The water heater includes a current measurement circuit configured to generate a feedback signal describing a galvanic current flowing from the core of the anode rod to an electrical ground. The water heater also includes a controller configured to receive the feedback signal from the current measurement circuit and to control one or more operations of the water heater based on the feedback signal.
    • 提供了基于电流确定加热元件和热水器状态的系统和方法。 示例性的热水器包括用于保持大量水的罐和延伸到水中的阳极杆。 阳极棒具有由导电材料制成的芯。 热水器还包括至少一个加热元件,该加热元件构造成在通电时加热水。 热水器包括电流测量电路,其被配置为产生描述从阳极棒的芯流到电接地的电流的反馈信号。 热水器还包括配置成从电流测量电路接收反馈信号并基于反馈信号控制热水器的一个或多个操作的控制器。
    • 8. 发明申请
    • ELECTRIC HEATING SYSTEM, A CONTROL HEAD AND A HEATING LIQUID
    • 电加热系统,控制头和加热液体
    • US20140321836A1
    • 2014-10-30
    • US14351572
    • 2012-10-12
    • Aurora3M + d.o.o.
    • Sukrija KacarMarko AdzagaFranc Zeljko Zupanic
    • F24H1/10F24H9/00H05B3/60
    • F24H1/106F24H9/0047F24H9/2028H05B3/60
    • A heating system to heat a main heating circulation comprises an electric heater, a control head, a heat exchanger, a pump, and a plurality of tubes. The electric heater is adapted to heat a primary heating liquid by applying an electric current directly to the primary heating liquid. The control head is adapted to determine a temperature and a pressure of the primary heating liquid. The heat exchanger comprises a first liquid passage for the primary heating liquid and a second liquid passage for a secondary heating liquid in the main heating circulation. The second liquid passage is in thermal contact with the first liquid passage to heat the secondary heating liquid while cooling the primary heating liquid. The tubes connect the electric heater, the control bead, the heat exchanger and the pump to define a circulation for the primary heating liquid. The pump is adapted to pump the primary heating liquid such that heat is transferred from the heater via the heat exchanger into said the heating circulation.
    • 用于加热主加热循环的加热系统包括电加热器,控制头,热交换器,泵和多个管。 电加热器适于通过将电流直接施加到主加热液体来加热初级加热液体。 控制头用于确定初级加热液体的温度和压力。 热交换器包括用于主加热液体的第一液体通道和用于主加热循环中的二次加热液体的第二液体通道。 第二液体通道与第一液体通道热接触以加热二次加热液体,同时冷却主要加热液体。 管连接电加热器,控制珠,热交换器和泵,以限定一次加热液体的循环。 泵适于泵送主加热液体,使得热量通过热交换器从加热器传递到加热循环中。